The effect of fibre orientation on the tensile load-bearing performance of sandwich composite materials in fire is investigated experimentally and analytically. The orientation of the glass fibres in the laminate skins was set at 0° (perfectly aligned in the load direction), or offset at angles of 9°, 15°, 30° or 45°. The influence of fibre orientation on the time-to-failure and failure mechanism during fire exposure is investigated. Experimental testing reveals that the structural performance of the sandwich composite deteriorates rapidly with increasing fibre offset angle due to glass transition softening of the polymer matrix becoming more dominant, and the fibre properties being less important as the laminate skins thermally soften and ...
In this paper, comprehensive experimental and numerical analyses are carried out to compare the fire...
Polymer composite materials are becoming increasingly popular in many engineering structures in the ...
The primary objective of this final year project is to investigate the post-fire, mechanical propert...
A thermal-mechanical model is presented for calculating softening and failure of flammable sandwich ...
A thermal-mechanical model for calculating the residual stiffness and strength of fire-exposed sandw...
The structural performance of polymer composites reinforced with plant fibres when exposed to fire w...
The effect of fire-induced damage on the edgewise compression properties of polymer sandwich composi...
The fire structural response of sandwich composite laminates incorporating bio-derived constituents ...
In this study, the fire structural properties of a basalt fibre reinforced polymer laminate under co...
A thermal-mechanical model is presented for calculating the residual compressive strength of flammab...
The fire structural response of sandwich composite laminates incorporating bio-derived constituents ...
The goal of this work is to predict the mechanical behavior of FRP composite sandwich structures in ...
This paper reports on changes to the mechanical properties of woven glass laminates with polyester, ...
The primary objective of this research work is to analyse the effect of fibre loading and orientatio...
Fibreglass composite materials are used extensively in the boat and leisure craft industry and are i...
In this paper, comprehensive experimental and numerical analyses are carried out to compare the fire...
Polymer composite materials are becoming increasingly popular in many engineering structures in the ...
The primary objective of this final year project is to investigate the post-fire, mechanical propert...
A thermal-mechanical model is presented for calculating softening and failure of flammable sandwich ...
A thermal-mechanical model for calculating the residual stiffness and strength of fire-exposed sandw...
The structural performance of polymer composites reinforced with plant fibres when exposed to fire w...
The effect of fire-induced damage on the edgewise compression properties of polymer sandwich composi...
The fire structural response of sandwich composite laminates incorporating bio-derived constituents ...
In this study, the fire structural properties of a basalt fibre reinforced polymer laminate under co...
A thermal-mechanical model is presented for calculating the residual compressive strength of flammab...
The fire structural response of sandwich composite laminates incorporating bio-derived constituents ...
The goal of this work is to predict the mechanical behavior of FRP composite sandwich structures in ...
This paper reports on changes to the mechanical properties of woven glass laminates with polyester, ...
The primary objective of this research work is to analyse the effect of fibre loading and orientatio...
Fibreglass composite materials are used extensively in the boat and leisure craft industry and are i...
In this paper, comprehensive experimental and numerical analyses are carried out to compare the fire...
Polymer composite materials are becoming increasingly popular in many engineering structures in the ...
The primary objective of this final year project is to investigate the post-fire, mechanical propert...